EP2696731B1 - Système et procédé permettant de distribuer une quantité mesurée d'un produit en vrac - Google Patents

Système et procédé permettant de distribuer une quantité mesurée d'un produit en vrac Download PDF

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Publication number
EP2696731B1
EP2696731B1 EP12771314.7A EP12771314A EP2696731B1 EP 2696731 B1 EP2696731 B1 EP 2696731B1 EP 12771314 A EP12771314 A EP 12771314A EP 2696731 B1 EP2696731 B1 EP 2696731B1
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EP
European Patent Office
Prior art keywords
tea
dispenser
electronic controller
housing
user interface
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP12771314.7A
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German (de)
English (en)
Other versions
EP2696731A4 (fr
EP2696731A2 (fr
Inventor
Eric GEIER
Jim Hartman
Everett MATHIS
Mehul Patel
Jerry GOTWAY
Cheryl E. WATSON
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Watson Investor Communications LLC
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Watson Investor Communications LLC
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Publication of EP2696731A2 publication Critical patent/EP2696731A2/fr
Publication of EP2696731A4 publication Critical patent/EP2696731A4/fr
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Publication of EP2696731B1 publication Critical patent/EP2696731B1/fr
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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/40Beverage-making apparatus with dispensing means for adding a measured quantity of ingredients, e.g. coffee, water, sugar, cocoa, milk, tea
    • A47J31/404Powder dosing devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G15/00Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G33/00Screw or rotary spiral conveyors
    • B65G33/08Screw or rotary spiral conveyors for fluent solid materials
    • B65G33/14Screw or rotary spiral conveyors for fluent solid materials comprising a screw or screws enclosed in a tubular housing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G33/00Screw or rotary spiral conveyors
    • B65G33/08Screw or rotary spiral conveyors for fluent solid materials
    • B65G33/14Screw or rotary spiral conveyors for fluent solid materials comprising a screw or screws enclosed in a tubular housing
    • B65G33/16Screw or rotary spiral conveyors for fluent solid materials comprising a screw or screws enclosed in a tubular housing with flexible screws operating in flexible tubes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G33/00Screw or rotary spiral conveyors
    • B65G33/24Details
    • B65G33/26Screws
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G15/00Arrangements for check-weighing of materials dispensed into removable containers

Definitions

  • aspects of the present disclosure relate to a container and dispenser for storing and dispensing loose materials, such as coffee, tea, powder, or other like materials.
  • the tea bag was developed, which contains a pre-determined amount of tea and is used to create a common sized beverage, such as 8 ounces.
  • tea bags are a lesser preferred option to fresh tea, as the tea spends quite some time in storage and transit prior to being delivered for use.
  • tea bags do not lend themselves easily to the production of teas of varying quantities, such as 8 ounces, 12 ounces, or a full tea pot.
  • "pods" or "cups” were developed which are used in automated machines; however, these pods suffer from the same problems as using tea bags. Accordingly, the present invention solves a number of these problems as well as other problems present in the dispensing industry, as are illustrated in the descriptions that follow.
  • EP 0640311 describes a device for packaging, transporting and dispensing controlled doses of granular or powdery goods, such as a food product.
  • a changeable container and a portioning device can be connected to each other.
  • the portioning device has electric control means for the dosed dispensing of goods. Both the changeable container and the portioning device can be used as often as is desired.
  • US 4,723,614 describes a modular apparatus for dispensing weight-controlled foodstuff portions.
  • the apparatus includes a housing which supports a removable silo, feeder screw and blocking plate components which discharge the foodstuff to a dosage cup.
  • a capacitor transducer is employed to support the dosage cup and perform a weighing function.
  • the housing has an opening for receiving foodstuff from the silo which leads to a feeder pathway.
  • the removeable feeder screw advances the food to the blocking plate which through a vibrator motion effects discharge to the dosage cup.
  • An electronic control card inputs a weighing signal from the transducer for controlled operation of the apparatus.
  • the present invention involves various aspects of a container and/or dispenser for use in dispensing loose materials, such as dry products.
  • Suitable dry products for use with the novel dispenser disclosed herein include tea, spices, coffee, dried foods, other powders and the like.
  • the container and dispenser described herein shall be described with respect to the dispensing of loose leaf tea. However, it shall be appreciated that the system could be easily applied to other loose materials, such as, but not limited to, those listed above.
  • the dispenser may include a coin/bill acceptor and/or credit card terminal or like device for use as a vending machine.
  • An illustrative embodiment of the present invention is a loose leaf tea system including a container and dispenser.
  • the tea container serves to store the tea leaves or grounds in a storage bin prior to activation of the system.
  • the dispenser measures and loads a selected amount of tea into a hopper for dispensing, such as into a waiting cup, tea pot, or a tea infuser.
  • the amount of tea may be selected based upon user operation of one of a number of quantity indicating/selection buttons provided in a user interface or may be otherwise input by the user, such as by rotating a dial or pushing a button or lever.
  • the container is preferably a sealed canister, such as a bag or jug, which may be stored within the dispenser so as to not expose the material contained to light, air and/or moisture.
  • no external canister is used, rather the container is a sealed refillable housing formed within the device, so as to prevent additional waste and increase efficiency.
  • a mechanism is provided below the opening in the container or housing below.
  • the mechanism preferably seals when not in use so as to prevent the tea in the container from coming into contact with the outside atmosphere prior to entering the hopper below.
  • the dispenser is able to operate the mechanism such that it loads a desired amount of tea (e.g. by weight), specified by the user, into the hopper. Once the desired amount of tea is loaded into the hopper, the tea may be dispensed into a desired location, such as into a waiting cup, tea pot, or infuser below.
  • a container and/or dispenser for use in dispensing loose materials such as dry products
  • Suitable dry products for use with the novel dispenser disclosed herein include tea, spices, coffee, dried foods, laundry detergent, other powders and the like.
  • the container and dispenser described herein shall be described with respect to the dispensing of loose leaf tea.
  • the container and dispenser could be easily applied to other loose materials, such as, but not limited to, those listed above.
  • the dispenser may include a coin/bill acceptor and/or credit card terminal or like device for use as a vending machine.
  • Tea dispenser 20 is illustrated in a stand alone form having an upper portion 22 for storing tea, a middle portion 24 for dispensing and measuring tea, and a bottom portion 26 providing a location for the user to place a receptacle, such as a cup, kettle, tea pot, infuser, or the like for receiving the dispensed tea.
  • tea dispenser 20 includes an electronic controller 80 which includes a user interface and controls the operation of the remaining portions of tea dispenser 20. It shall be appreciated that tea dispenser 20 may take various other forms and configurations depending upon user needs and requirements.
  • tea dispenser 20 is shown absent its middle portion 24 and bottom portion 26 and its external housing for purposes of illustrating the internal components of upper portion 22.
  • tea dispenser 20 includes an interchangeable tea container 30 for attachment to a receiving portion 40.
  • tea dispenser 20 includes measuring portion 50.
  • receiving portion 40 may include an lid, which preferably establishes an airtight seal, so that receiving portion 40 may serve the purposes of container 30 without the need for a separate container 30.
  • tea storage bin 31 is a hollow recess suitable for the storage of tea for subsequent dispensing formed by receiving portion 40.
  • storage bin 31 also comprises a standard lid 33 which preferably forms an air tight hermetic seal with respect to storage bin 31 to prevent the contents of storage bin 31 from coming into contact with the outside environment, thereby maintaining its freshness prior to dispensing.
  • Measuring portion 50 mounts to the base of receiving portion 40 and serves to controllably release the contents of container 30, using the force of gravity.
  • the dispensing is controlled by dispenser chute 52, which includes helical coil or screw 56, motor 57, and seal 155, all of which are described further herein with respect to FIGs. 6 , 8 and 9 .
  • FIGs. 4 and 5 show exemplary plan views of two user interfaces suitable for use on tea dispenser 20. It shall be appreciated that many user interface designs may be utilized without departing from the scope of the present disclosure.
  • FIG. 4 illustrates a touch screen user interface 81 in which a number of user selectable options are provided for various sized beverages.
  • user interface 81 may include logical buttons 82, 83, and 84 which correspond to an 8 oz., 16 oz, and 20 oz. beverage respectively. Additionally, one or more of these buttons may be programmed to provide a customized size, such as 12, 18, or 20 ozs.
  • buttons associated with these buttons may be customized by the user so as to correspond to the sizes of tea which the user prefers or which are available on the menu, such as in the case of a restaurant or tea shop. Additionally, when the user interface is provided in a touch screen, the buttons may be changed so as to show to currently programmed size, such as in ounces (or the metric equivalent), or the like. Furthermore, if desired, one or more buttons may be customized to provide for a larger volume, such as that of a tea pot.
  • internal controller 80 (shown in FIG. 1 ) is configured to operate tea dispenser 20 to dispense a measured amount of tea suitable for providing an 8 oz. tea beverage.
  • the user interface may remain relatively simply, if desired.
  • the weights corresponding to the various buttons may be increased accordingly depending upon the type of tea the device is currently configured for.
  • user interface 81 may accept input regarding one of a number of predefined types of teas and a desired volume of tea. Based upon the currently selected tea, the amount of tea dispensed (such as by weight) for the selected volume may be different than it would have been had a different tea type been selected.
  • FIG. 5 an alternate, more user adjustable user interface 85 is illustrated in which a number of user selectable options are provided for various sized beverages in addition to a strength adjustment.
  • user interface 85 may include display 86 and buttons 87, 88, and 89 which correspond to an 8 oz., 16 oz, and 20 oz. beverage or other like amounts.
  • button 87 Upon selection of button 87, internal controller 80 (shown in FIG. 1 ) is configured to operate tea dispenser 20 to dispense a measured amount of tea suitable for providing an 8 oz. tea beverage.
  • User interface 85 also provides a secondary adjustment which allows the user to specify how strong they prefer their tea on a scale 90 from weak to strong depending on the operator's or customer's steeping preferences.
  • button 91 the amount of tea (by weight) dispensed is lowered to provide for a weaker tea.
  • button 92 the amount (by weight) of tea to be dispensed in raised, providing for a stronger tea.
  • the current selection including both beverage size and strength are indicated to the user by display 86.
  • tea dispenser 20 having one form of measuring and dispensing mechanisms is shown from a side plan view.
  • the bottom portion 26 and external housing of measurement portion 60 have been omitted for purposes of illustrating the internal components of tea dispenser 20.
  • tea dispenser 20 includes container 30 for attachment to a receiving portion 40.
  • tea dispenser 20 includes measuring portion 50 and measurement portion 60.
  • Measurement portion 60 is shown absent its exterior housing so that the details of the inner components may be described.
  • Measurement portion 60 includes a hopper 62 for receiving tea dispensed from dispenser chute 52 of dispensing carousel 50 under the control of controller 80.
  • Dispenser chute 52 is a cylindrical chute connected to receiving portion 40 (and this container 30) at its proximal end 53. Dispenser chute 52 terminates at dispenser opening 54 at its other end. Dispenser opening 54 may also include a seal 55 which is opened only during operation in order to maintain the airtight seal of container 30, thereby protecting its contents. As shown, seal 55 may be a door which closes to establish a seal below dispenser opening 54. Between proximal end 53 and dispenser opening 54, a rotably mounted helical coil 56 is disposed within dispenser chute 52 along a portion of its length.
  • Coil 56 may be formed of one or more pieces of wire or other suitable material or alternatively may be formed as a helical screw made of metal, plastic, or the like so as to have more fully defined vanes, which may be more beneficial when dispensing a finer powered material as opposed to a larger loose material.
  • the diameter of dispenser chute 52 is between approximately 1 ⁇ 2" " and 2" and the diameter of screw 56 is between 3/8" and 1 ⁇ 2" with a pitch of between 1 ⁇ 4" and 3/8".
  • the diameter of dispenser chute 52 is approximately 1" and the diameter of wire which forms screw 56 is between 1/32" and 1/16".
  • screw 56 is operated by electronic controller 80 at a variable speed, such that when the amount of material still needed to be dispensed remains high, screw 56 operates at a higher speed, but when the amount of material in receptacle 62 approaches the desired amount, the speed of screw 56 may be gradually or discretely reduced so as to provide as close as possible to be desired amount of the dispensed material into receptacle 62, as will be described further below with respect to FIG. 7 .
  • arm 63 is released and the contents of the hopper 62 and dumped into funnel 66, which guides the contents of hopper 62 out of the middle portion 24 and down into the designated area when a waiting container is positioned in the bottom portion 26.
  • FIG. 7 illustrates a flowchart which, along with continued reference to FIGs. 1-6 , shows a beverage selection and dispensing process in accordance with one form of the present invention, which will be used to illustrate the manner in which tea dispenser of FIG. 1 may operate.
  • Process 1500 begins with step 1510 in which the user activates the tea dispenser 22 by providing input sufficient to enable the dispenser to identify the amount of tea to be dispensed.
  • this may include an indication input into a user interface, such as user interface 81 or 85, that the user desires an 8 oz. tea, or that the user desires a 16 oz. tea made either slightly stronger or weaker than normal.
  • step 1520 the electronic controller 80 of tea dispenser 20 receives the user input and determines the proper amount of tea (in weight) to be dispensed.
  • the electronic controller 80 then begins to dispense the tea by calibrating the value perceived by strain gauge 64 to zero in order to accurately measure the amount of tea added to the hopper 62 in step 1530.
  • the electronic controller 80 then enables the motor(s) which drives rotary member 54 and screw 56 in step 1540.
  • tea from container 30 begins to accumulate in hopper 62.
  • strain gauge 64 begins periodically reporting a value indicating the weight of the tea dispensed into hopper 62 to electronic controller 80 in step 1550.
  • step 1560 electronic controller lowers the speed of the motor which drives screw 56, thereby decreasing the rate of dispensing (step 1570).
  • step 1580 the electronic controller 80 deactivates the motor(s) which drives rotary member 54 and screw 56 in step 1590, and releases the mechanism which holds arm 63, thereby dumping the contents of hopper 62 down and into funnel 66 and ultimately into the user's waiting container (step 1600).
  • a sensor is required to sense a receptacle, such as a cup or the like, in the dispensing area prior to the tea dispenser 22 being operable to dispenser the tea in step 1600. The process ends at step 1610.
  • the electronic controller 80 may perform more than one speed adjustment in order to quickly dispense tea up to a certain percentage of the desired amount and then go through several speed reductions in order to accurately and quickly arrive at the desired weight.
  • dispenser chute 152 is a cylindrical elbow shaped chute connected to receiving portion 40 (and this container 30) at its proximal end 153.
  • Dispenser chute 152 terminates at dispenser opening 154 at its other end.
  • Dispenser opening 154 may also include a seal 155 which is opened only during operation in order to maintain the airtight seal of container 30, thereby protecting its contents.
  • seal 155 is a cap which covers and surrounds dispenser opening 154 to establish a seal.
  • a rotably mounted helical coil 156 is disposed within dispenser chute 152 along a portion of its length.
  • Coil 156 may be formed of one or more pieces of wire or other suitable material or alternatively may be formed as a helical screw made of metal, plastic, or the like so as to have more fully defined vanes, which may be more beneficial when dispensing a finer powered material as opposed to a larger loose material.
  • the diameter of dispenser chute 152 is between approximately 1 ⁇ 2" and 2" and the diameter of screw 56 is between 3/8" and 1 ⁇ 2" with a pitch of between 1 ⁇ 4" and 3/8". In a further preferred form, the diameter of dispenser chute 52 is approximately 1", and the diameter of wire which forms screw 56 is between 1/32" and 1/16".
  • dispenser chute 252 is formed by an electrically controlled conveyor 253 which collects material from the bottom opening of container 30 located directly above it and delivers it to a sloped surface 254 which leads the material, via the force of gravity, through trap door 255 and into receptacle 62.
  • Trap door 255 preferably forms an air-tight seal which is opened only during operation in order to maintain the airtight seal of container 30, thereby protecting its contents.
  • seal 55 is a door which closes to establish a seal below dispenser opening 54.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Apparatus For Making Beverages (AREA)
  • Tea And Coffee (AREA)
  • Beverage Vending Machines With Cups, And Gas Or Electricity Vending Machines (AREA)
  • Devices For Dispensing Beverages (AREA)
  • Basic Packing Technique (AREA)

Claims (15)

  1. Distributeur de produit en vrac (20) pouvant servir à distribuer une quantité sélectionnée de produit en vrac, comprenant :
    un boîtier extérieur définissant un emplacement de réceptacle approprié pour le placement d'un réceptacle dans lequel le produit en vrac doit être distribué, ledit boîtier extérieur comprenant une ouverture de sortie positionnée au-dessus dudit emplacement de réceptacle :
    un boîtier fermé de manière étanche (40) permettant de stocker ledit produit en vrac ;
    une interface utilisateur (81 ; 85) montée sur ledit boîtier extérieur ;
    un dispositif de commande électronique (80) permettant de recevoir une sélection d'utilisateur identifiant une quantité souhaitée de produit en vrac à distribuer et effectuée via ladite interface utilisateur (81 ; 85) ; et
    un mécanisme de mesure (50) positionné en dessous dudit boîtier fermé de manière étanche (40) et au-dessus de ladite ouverture de sortie, comprenant :
    une coupelle (62) montée sur une balance (64) de manière à fournir audit dispositif de commande électronique (80) le poids du produit contenu actuellement dans celle-ci et, dès activation par ledit dispositif de commande électronique (80), à libérer le produit contenu dans celle-ci à travers ladite ouverture de sortie ;
    une rampe à produit (52), présentant une entrée en communication fluidique étanche avec l'intérieur dudit boîtier fermé de manière étanche (40) et une sortie positionnée de manière à distribuer du produit dans ladite coupelle (62) ;
    une vis rotative (56) entraînée par un moteur (57) raccordé audit dispositif de commande électronique (80), ladite vis rotative (56) étant située au sein de ladite rampe à produit (52) de manière à fournir une distribution pouvant être commandée du produit dans ladite coupelle (62) ; et
    caractérisé par
    une coiffe de fermeture étanche (55) conçue pour fermer mécaniquement de manière étanche la sortie de ladite rampe à produit (52) lorsque ladite vis rotative (56) n'est pas en cours de fonctionnement.
  2. Distributeur de produit en vrac (20) selon la revendication 1, dans lequel ledit boîtier fermé de manière étanche est fermé hermétiquement.
  3. Distributeur de produit en vrac (20) selon la revendication 1, dans lequel ladite rampe à produit (52) présente une forme en coude.
  4. Distributeur de produit en vrac (20) selon la revendication 2, dans lequel ledit dispositif de commande électronique (80) et ledit mécanisme de mesure (50) sont situés au sein dudit boîtier extérieur, éventuellement dans lequel ledit boîtier fermé de manière étanche (40) comprend un agitateur (54) qui fonctionne pendant au moins une partie du fonctionnement de ladite rampe à produit (52).
  5. Distributeur de produits en vrac (20) selon la revendication 1, dans lequel ledit produit en vrac correspond à des feuilles de thé.
  6. Distributeur de produit en vrac (20) selon la revendication 5, dans lequel ladite interface utilisateur (81 ; 85) permet des ajustements afin de spécifier le volume de thé à préparer, ladite interface utilisateur (81 ; 85) permettant éventuellement une sélection par l'utilisateur du type de thé à distribuer et stockant deux poids différents pour une quantité sélectionnée de thé à préparer en association avec chacun des deux types de thé sélectionnés.
  7. Procédé de distribution d'une quantité, sélectionnée par un utilisateur, de thé en vrac utilisant un distributeur selon l'une quelconque des revendications 1, 9 ou 15 (20), comprenant les étapes consistant à :
    recevoir une première entrée d'utilisateur via une interface utilisateur (81 ; 85) située sur ledit distributeur, ladite entrée d'utilisateur identifiant une quantité souhaitée de thé ;
    recevoir une deuxième entrée d'utilisateur via ladite interface utilisateur (81 ; 85), ladite deuxième entrée ajustant ladite quantité souhaitée de thé à la hausse ou à la baisse au moyen d'une quantité prédéterminée ;
    recevoir un poids fourni par la balance (64) sur laquelle est montée une coupelle (62) ;
    transférer du thé depuis un conteneur fermé de manière étanche (40) jusque dans ladite coupelle (62) jusqu'à ce que ledit poids fourni par ladite balance (64) correspond à ou dépasse ladite quantité souhaitée ;
    conserver le thé restant de manière étanche à l'abri de l'air extérieur dans le conteneur fermé de manière étanche (40) ; et
    distribuer ledit thé à partir de ladite coupelle (62) à travers une ouverture de sortie dudit distributeur et fermer mécaniquement de manière étanche la sortie grâce à un joint étanche (55, 155, 255) lorsque la sortie n'est pas en cours utilisation.
  8. Procédé selon la revendication 7 :
    (i) dans lequel ladite deuxième entrée d'utilisateur fournit un thé plus fort ou plus doux ;
    (ii) dans lequel ladite deuxième entrée d'utilisateur ajuste le volume de thé souhaité à la hausse ou à la baisse.
  9. Distributeur de produit en vrac (20) pouvant servir à distribuer une quantité sélectionnée de produit en vrac, comprenant :
    un boîtier extérieur définissant un emplacement de réceptacle approprié pour le placement d'un réceptacle dans lequel le produit en vrac doit être distribué, ledit boîtier extérieur comprenant une ouverture de sortie positionnée au-dessus dudit emplacement de réceptacle :
    un boîtier fermé de manière étanche (40) permettant de stocker ledit produit en vrac ;
    une interface utilisateur (81 ; 85) montée sur ledit boîtier extérieur ;
    un dispositif de commande électronique (80) permettant de recevoir une sélection d'utilisateur identifiant une quantité souhaitée de produit en vrac à distribuer et effectuée via ladite interface utilisateur (81 ; 85) ; et
    un mécanisme de mesure (50) positionné en dessous dudit boîtier fermé de manière étanche (40) et au-dessus de ladite ouverture de sortie, comprenant :
    une coupelle (62) montée sur une balance (64) de manière à fournir audit dispositif de commande électronique (80) le poids du produit contenu actuellement dans celle-ci et, dès l'activation par ledit dispositif de commande électronique (80), à libérer le produit contenu dans celle-ci à travers ladite ouverture de sortie ;
    une sortie commandée (52) en communication fluidique avec ledit boîtier, ladite sortie commandée (52) étant conçue pour distribuer le produit en vrac à partir dudit boîtier lorsqu'elle est activée par ledit dispositif de commande électronique (80) ;
    un transporteur (253) entraîné par un moteur (57) raccordé audit dispositif de commande électronique (80), dans lequel ledit transporteur (253) est monté en dessous de ladite sortie commandée (52) et est configuré pour recevoir du produit en vrac en provenance de ladite sortie commandée (52) et distribuer le produit dans ladite coupelle (62) ;
    dans lequel ladite sortie commandée (52) est conçue pour être fermée mécaniquement de manière étanche grâce à un joint étanche (255) lorsque ledit transporteur (253) n'est pas en cours d'utilisation.
  10. Distributeur de produit en vrac (20) selon la revendication 9, dans lequel ledit boîtier fermé de manière étanche (40) comprend un agitateur (54) qui fonctionne pendant au moins une partie du fonctionnement de ladite sortie commandée (52).
  11. Distributeur de produit en vrac (20) selon la revendication 9, dans lequel ledit produit en vrac correspond à des feuilles de thé.
  12. Distributeur de produit en vrac (20) selon la revendication 11, dans lequel ladite interface utilisateur (81 ; 85) permet des ajustements afin de spécifier le nombre de onces de thé à préparer.
  13. Distributeur de produit en vrac (20) selon la revendication 11, dans lequel ladite interface utilisateur (81 ; 85) est conçue pour recevoir une entrée d'utilisateur spécifiant le type de thé contenu dans ledit boîtier (40) ; ladite interface utilisateur (81 ; 85) permettant éventuellement une sélection par l'utilisateur du type de thé à distribuer et stockant deux poids différents pour une quantité sélectionnée de thé à préparer en association avec chacun des deux types de thé sélectionnés.
  14. Distributeur de produit en vrac (20) selon la revendication 13, dans lequel ladite sortie commandée (52) forme un joint hermétique dudit conteneur lorsqu'elle n'est pas activée par ledit dispositif de commande électronique (80).
  15. Distributeur de produit en vrac (20) pouvant servir à distribuer une quantité prédéterminée de produit en vrac lors d'une activation par un utilisateur, comprenant :
    un boîtier extérieur définissant un emplacement de réceptacle approprié pour le placement d'un réceptacle dans lequel le produit en vrac doit être distribué, ledit boîtier extérieur comprenant une ouverture de sortie positionnée au-dessus dudit emplacement de réceptacle ;
    un boîtier fermé de manière étanche (40) permettant de stocker ledit produit en vrac ;
    une interface utilisateur (81 ; 85) montée sur ledit boîtier extérieur et capable de recevoir une entrée d'utilisateur concernant une première quantité prédéterminée de produit en vrac et de la stocker en association avec un premier bouton pouvant être sélectionné par un utilisateur ;
    un mécanisme de mesure (50) positionné en dessous dudit boîtier fermé de manière étanche (40) et au-dessus de ladite ouverture de sortie, comprenant :
    une coupelle (62) montée sur une balance de manière à fournir audit dispositif de commande électronique (80) le poids du produit contenu actuellement dans celle-ci et, dès activation par ledit dispositif de commande électronique (80), à libérer le produit contenu dans celle-ci à travers ladite ouverture de sortie ; et
    une sortie commandée en communication fluidique avec ledit boîtier (40), ladite sortie commandée étant conçue pour distribuer du produit en vrac à partir dudit boîtier (40) lorsqu'elle est activée par ledit dispositif de commande électronique (80) et ladite sortie commandée étant conçue pour être fermée mécaniquement de manière étanche grâce à un joint étanche (55 ; 155 ; 255) lorsque ladite sortie commandée n'est pas en cours d'utilisation ; et
    un dispositif de commande électronique (80) permettant de recevoir une sélection d'utilisateur dudit premier bouton effectuée via ladite interface utilisateur (81 ; 85) et, en réaction, activer ledit mécanisme de mesure (50) afin de distribuer ladite première quantité prédéterminée de produit en vrac.
EP12771314.7A 2011-04-15 2012-04-13 Système et procédé permettant de distribuer une quantité mesurée d'un produit en vrac Active EP2696731B1 (fr)

Applications Claiming Priority (2)

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US201161475723P 2011-04-15 2011-04-15
PCT/US2012/033489 WO2012142390A2 (fr) 2011-04-15 2012-04-13 Système et procédé permettant de distribuer une quantité mesurée d'un produit en vrac

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EP2696731A2 EP2696731A2 (fr) 2014-02-19
EP2696731A4 EP2696731A4 (fr) 2014-10-01
EP2696731B1 true EP2696731B1 (fr) 2016-10-12

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US (2) US9417114B2 (fr)
EP (1) EP2696731B1 (fr)
JP (3) JP2014510611A (fr)
CN (1) CN103732110B (fr)
AU (1) AU2012242665B2 (fr)
BR (1) BR112013026455B1 (fr)
CA (1) CA2832195C (fr)
ES (1) ES2610210T3 (fr)
MX (1) MX343531B (fr)
PL (1) PL2696731T3 (fr)
RU (1) RU2597545C2 (fr)
SG (1) SG194476A1 (fr)
WO (1) WO2012142390A2 (fr)

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Also Published As

Publication number Publication date
EP2696731A4 (fr) 2014-10-01
US9417114B2 (en) 2016-08-16
CA2832195A1 (fr) 2012-10-18
MX2013011976A (es) 2014-10-15
PL2696731T3 (pl) 2017-05-31
MX343531B (es) 2016-11-09
AU2012242665B2 (en) 2016-12-22
JP6912444B2 (ja) 2021-08-04
JP2014510611A (ja) 2014-05-01
US20140053946A1 (en) 2014-02-27
JP2019069164A (ja) 2019-05-09
CN103732110B (zh) 2017-07-11
JP2017140404A (ja) 2017-08-17
WO2012142390A2 (fr) 2012-10-18
SG194476A1 (en) 2013-12-30
US20170127873A1 (en) 2017-05-11
CN103732110A (zh) 2014-04-16
BR112013026455B1 (pt) 2020-12-15
RU2597545C2 (ru) 2016-09-10
AU2012242665A1 (en) 2013-10-17
ES2610210T3 (es) 2017-04-26
WO2012142390A3 (fr) 2013-01-10
EP2696731A2 (fr) 2014-02-19
CA2832195C (fr) 2018-11-27
BR112013026455A2 (pt) 2016-12-27
RU2013147913A (ru) 2015-05-20

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